Atomic capacitor
This invention describes a capacitor that formed by a charge or species specific membrane material filled with aqueous or non-aqueous liquid with soluble salts dissolved and non-dissolved in solution and contained within the membrane material. When charged, the oppositely charged ion will leave the structure, leaving behind a charged atomic capacitor.
1. A capacitive deionization device, comprising:
a first electrode comprising a first plurality of voids;
a positive charge specific membrane material, the first charge specific membrane material positioned proximate the first electrode;
a first salt solution residing in the first plurality of voids;
a dielectric spacer flow channel positioned proximate the first charge specific membrane material;
a negative charge specific membrane material, the negative charge specific membrane material positioned proximate the dielectric spacer flow channel opposite to the negative charge specific membrane material;
a second electrode comprising a second plurality of voids, the second electrode being positioned proximate to the second charge specific membrane material opposite to the dielectric spacer flow channel; and
a second salt solution residing in the second plurality of voids.
2. The capacitive deionization device of claim 1 , wherein the positive charge specific membrane material comprises a first membrane layer between the first electrode and the dielectric spacer flow channel.
3. The capacitive deionization device of claim 2 , wherein the negative charge specific membrane material comprises a second membrane layer positioned between the second electrode and the dielectric spacer flow channel.
4. The capacitive deionization device of claim 1 , wherein the first salt solution comprises a salt species selected from the group consisting of sodium chloride, antimony trichloride, ammonia, antimony trifluoride, zinc chloride, zinc bromide, and indium bromide.
5. The capacitive deionization device of claim 1 , wherein the second salt solution comprises a salt species selected from the group consisting of sodium chloride, antimony trichloride, ammonia, antimony trifluoride, zinc chloride, zinc bromide, and indium bromide.
6. The capacitive deionization device of claim 1 , wherein each of the first salt solution and the second salt solution comprises a salt species selected from the group consisting of sodium chloride, antimony trichloride, ammonia, antimony trifluoride, zinc chloride, zinc bromide, and indium bromide.
7. The capacitive deionization device of claim 1 , wherein at least one of the first salt solution and the second salt solution has a capacitance density of 5,0000 F/cc or greater.
8. The capacitive deionization device of claim 1 , wherein each of the first salt solution and the second salt solution has a capacitance density of 5,0000 F/cc or greater.
9. The capacitive deionization device of claim 1 , wherein at least one of the first salt solution and the second salt solution is saturated.
10. The capacitive deionization device of claim 1 , wherein each of the first salt solution and the second salt solution is saturated.